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Patterns of fish communities and water quality in impounded lakes of China's south-to-north water diversion project

机译:中国南水北调工程蓄水湖泊鱼类群落结构和水质

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Understanding the ecological impacts of large-scale hydraulic projects is critical for maintaining ecosystem health while meeting human water needs. It is, however, currently hindered by a lack of direct evidence on ecological impacts associated with this type of project particularly on water quality and fish communities. Here, we characterized patterns and variations offish communities and water quality in five impounded lakes of the Chinese South-to-North Water Diversion Project (SNWDP), with the aim of better understanding potential ecological impacts of inter-basin water transfers. We found that 1) the impacts of water transfer on water quality in the impounded lakes was generally characterized by hydrological parameters (e.g. total suspended solids, turbidity, transparency, chlorophyll a, dissolved oxygen, conductivity and total hardness) in an upstream-downstream direction; 2) increased hydrological connectivity may have favored biological invasion (e.g. Tridentiger bifasciatus) and promoted a potential biotic homogenization among the impounded lakes; and 3) there was a pattern of decreased fish abundance and biomass from the upstream to downstream lakes with fish communities strongly driven by changing water quality patterns across the impounded lakes. These findings improve our understanding of ecological impacts of large-scale hydraulic projects and provide a significant basis for water agencies with similar water transfer systems to optimize their water transfer management in order to minimize ecological impacts.
机译:了解大型水利项目的生态影响对于维持生态系统健康,同时满足人类用水需求至关重要。但是,目前缺乏直接证据证明与这类项目相关的生态影响,特别是对水质和鱼类群落的影响。在这里,我们描述了中国南水北调工程(SNWDP)的五个蓄水湖泊中鱼类群落和水质的模式,变化,目的是更好地了解跨流域调水的潜在生态影响。我们发现1)上游地区的水流参数通常以水文参数(例如总悬浮固体,浊度,透明度,叶绿素a,溶解氧,电导率和总硬度)为特征来表征蓄水湖中水质。 ; 2)增加的水文连通性可能有利于生物入侵(例如Tridentiger bifasciatus)并促进了蓄水湖泊之间潜在的生物均质化; (3)从上游湖泊到下游湖泊,鱼类的丰度和生物量都有所减少的趋势,其中鱼类群落受到水塘中水质格局变化的强烈驱动。这些发现提高了我们对大型水利工程对生态影响的理解,并为具有类似输水系统的水务机构优化其输水管理以最大程度地减少生态影响提供了重要依据。

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